Synthesis and characterization of hardened cu-fe-ni-p alloy
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In the manufacturing industry of electrical contacts, the prohibition of the use of toxic metals (Cd, Be), and desire to avoid the alloying with precious metals (Ag) has created a need for new alloys with good electrical conductivity and high mechanical properties at elevated temperatures. As a potentially useful material for this purpose, we have analyzed the continuously cast Cu-Fe-Ni-P alloy in various heat treatment conditions. Sequence of phase transformations during heat treatment was followed by 4 point D.C. electrical resistivity measuring method, and analyzed by scanning (SEM) and transmission (TEM) electron microscopy. Measurements of Vickers hardness and electrical conductivity after various heat treatment procedures indicate on high potential of Cu-Fe-Ni-P alloys as a material for electrical contacts.
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copper alloys / precipitation hardening / electrical contacts / electrical conductivitySource:
Metalurgija, 2015, 54, 1, 51-54Publisher:
- Faculty of Metallurgy
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Stomatološki fakultetTY - JOUR AU - Brovc, G. AU - Drazić, G. AU - Karpe, B. AU - Đorđević, Igor AU - Lojen, Gorazd AU - Kosec, Borut AU - Bizjak, M. PY - 2015 UR - https://smile.stomf.bg.ac.rs/handle/123456789/2061 AB - In the manufacturing industry of electrical contacts, the prohibition of the use of toxic metals (Cd, Be), and desire to avoid the alloying with precious metals (Ag) has created a need for new alloys with good electrical conductivity and high mechanical properties at elevated temperatures. As a potentially useful material for this purpose, we have analyzed the continuously cast Cu-Fe-Ni-P alloy in various heat treatment conditions. Sequence of phase transformations during heat treatment was followed by 4 point D.C. electrical resistivity measuring method, and analyzed by scanning (SEM) and transmission (TEM) electron microscopy. Measurements of Vickers hardness and electrical conductivity after various heat treatment procedures indicate on high potential of Cu-Fe-Ni-P alloys as a material for electrical contacts. PB - Faculty of Metallurgy T2 - Metalurgija T1 - Synthesis and characterization of hardened cu-fe-ni-p alloy VL - 54 IS - 1 SP - 51 EP - 54 UR - https://hdl.handle.net/21.15107/rcub_smile_2061 ER -
@article{ author = "Brovc, G. and Drazić, G. and Karpe, B. and Đorđević, Igor and Lojen, Gorazd and Kosec, Borut and Bizjak, M.", year = "2015", abstract = "In the manufacturing industry of electrical contacts, the prohibition of the use of toxic metals (Cd, Be), and desire to avoid the alloying with precious metals (Ag) has created a need for new alloys with good electrical conductivity and high mechanical properties at elevated temperatures. As a potentially useful material for this purpose, we have analyzed the continuously cast Cu-Fe-Ni-P alloy in various heat treatment conditions. Sequence of phase transformations during heat treatment was followed by 4 point D.C. electrical resistivity measuring method, and analyzed by scanning (SEM) and transmission (TEM) electron microscopy. Measurements of Vickers hardness and electrical conductivity after various heat treatment procedures indicate on high potential of Cu-Fe-Ni-P alloys as a material for electrical contacts.", publisher = "Faculty of Metallurgy", journal = "Metalurgija", title = "Synthesis and characterization of hardened cu-fe-ni-p alloy", volume = "54", number = "1", pages = "51-54", url = "https://hdl.handle.net/21.15107/rcub_smile_2061" }
Brovc, G., Drazić, G., Karpe, B., Đorđević, I., Lojen, G., Kosec, B.,& Bizjak, M.. (2015). Synthesis and characterization of hardened cu-fe-ni-p alloy. in Metalurgija Faculty of Metallurgy., 54(1), 51-54. https://hdl.handle.net/21.15107/rcub_smile_2061
Brovc G, Drazić G, Karpe B, Đorđević I, Lojen G, Kosec B, Bizjak M. Synthesis and characterization of hardened cu-fe-ni-p alloy. in Metalurgija. 2015;54(1):51-54. https://hdl.handle.net/21.15107/rcub_smile_2061 .
Brovc, G., Drazić, G., Karpe, B., Đorđević, Igor, Lojen, Gorazd, Kosec, Borut, Bizjak, M., "Synthesis and characterization of hardened cu-fe-ni-p alloy" in Metalurgija, 54, no. 1 (2015):51-54, https://hdl.handle.net/21.15107/rcub_smile_2061 .